Preparation and Drug Release Properties of IBU-Loaded Mesoporous Calcium Silicate Hydrate (CSH) Spheres

Article Preview

Abstract:

The novel kind flowerlike mesoporous spheres of calcium silicate hydrate (CaO•SiO2•H2O, CSH) have been synthesized by co-precipitation method on based with water/alcohol/calvital/ tetraethyl orthosilicate (TEOS) system. The synthesized CSH were applied as a carrier to study the loaded behaviors of ibuprofen(IBU),was used to investigate the drug loading behavior of the CSH for different times has been also discussed. The drug loading capacities(DLCs) of CSH loaded for 12h has reached 116.78wt.%. The structural, morphological and textural properties were investigated by SEM, FTIR, TG and BET. The results show that it would be a good candidate as drug carrier for bone repair.

You might also be interested in these eBooks

Info:

Periodical:

Advanced Materials Research (Volumes 393-395)

Pages:

894-897

Citation:

Online since:

November 2011

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2012 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] Fan J, Yu CZ, Zhao DY, et al. Angew Chem Int Ed Vol. 42, (2003), pp.3146-3150.

Google Scholar

[2] Goradia D, Cooney J, Hodnett BK, et al. J Mol Catal B Enzym Vol. 32, (2005), pp.231-239.

Google Scholar

[3] Jorge A, Marcela A, Ismael BJ, et al. Micropor Mesopor Mater Vol. 83, (2005), pp.193-200.

Google Scholar

[4] Han K, Wu ZJ, Lee J, et al. Biochem Eng J Vol. 22, (2005), pp.161-166.

Google Scholar

[5] Seong Je Cho, Hyun Ju Kim, Jae Ho Lee, et al. Mater. Lett Vol. 64, (2010), p.1664–1667.

Google Scholar

[6] M Vallet-Regi, A Ramila, R P del Real, et al. Chem. Mater Vol. 13, (2001), p.308–311.

Google Scholar

[7] W.R. Zhao, J.L. Gu, L.X. Zhang, et al. J Am Chem Soc Vol. 127, (2005), pp.8916-17.

Google Scholar

[8] Juan L, Vivero-Escoto, Igor I. Slowing, et al. J Am Chem Soc Vol. 131, (2009), p.3462–3463.

Google Scholar

[9] Zhang M L, J. Chang. Ultr. Sono Vol. 17, (2010), pp.789-792.

Google Scholar

[10] R L Grant, C Yao, D Gabaldon, et al. Toxicology Vol. 76, (1992), p.153–176.

Google Scholar

[11] Wu J, Zhu Y J, Cao S W, et al. Advanced Materials Vol. 22, (2010), pp.749-753.

Google Scholar

[12] K L. Lin, J Chang, Y Zeng, et al. Mater. Lett Vol. 58, (2004), p.2109–2113.

Google Scholar

[13] H Y Li, J Chang. Biomaterials Vol. 25, (2004), p.5473–5480.

Google Scholar

[14] K S W Sing, D H Everett, R. A. W. Haul, et al. Pure Appl Chem Vol. 57, (1985), pp.603-619.

Google Scholar